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3300/36 Dual Temperature Monitor Bently Nevada

3300/36 Dual Temperature Monitor Bently Nevada

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Bently Nevada 3300/36 Dual Temperature Monitor Configured for dual-point temperature acquisition in the Bently Nevada 3300 Machinery Monitoring System, the Bently... اقرأ المزيد

رمز المنتج: 3300/36
بلد المنشأ: USA

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    Bently Nevada 3300/36 Dual Temperature Monitor

    Configured for dual-point temperature acquisition in the Bently Nevada 3300 Machinery Monitoring System, the Bently Nevada 3300/36, also referenced as the 3300/36 Dual Temperature Monitor, executes direct signal conversion from RTD or thermocouple inputs into proportional analog outputs for machinery protection logic.

    Hardware Specifications

    Parameter

    Specification

    Model Brand

    Bently Nevada

    Origin

    USA

    Weight

    0.8 kg

    Dimensions

    Two-slot width in standard 3300 rack

    Operating Temp

    0 degC to +65 degC

    Power Consumption

    Supplied via 3300 backplane

    Number of Channels

    2

    Input Sensor Types

    RTD: 100 ohm Pt, Copper, Nickel; TC: Type J, K, E, T

    Recorder Outputs

    4-20 mA DC or 1-5 Vdc per channel

    Buffered Outputs

    Not provided

    Relay Configurations

    Shared or Quad Relays, programmable NO/NC, latching/non-latching

    Display

    7-segment LCD, OK/Alert/Danger LEDs

    Relative Humidity

    Up to 95%, non-condensing

    Eddy-Current Probe Scaling and Gap Voltage Validation

    The 3300/36 supports integration with eddy-current probe systems for rotor thermal expansion tracking, requiring precise probe scale factor alignment during installation. Gap voltage validation targets a nominal -10 VDC bias to ensure linear temperature correlation with shaft displacement measurements. Cross-talk suppression measures are implemented in the signal conditioning stage to maintain measurement integrity in high-electrical-noise environments typical of turbine generator sets.

    Frequently Asked Questions

    Q: Does the 3300/36 support hot-swap replacement without interrupting rack power?

    A: No. Removal or insertion must occur with the rack de-energized to prevent transient backplane faults.

    Q: What is the minimum clearance required around the module for ventilation?

    A: Maintain at least 25 mm of unobstructed airflow space above and below the installed module.

    Q: Are the relay contacts rated for inductive loads without suppression?

    A: No. External suppression components are mandatory when switching inductive loads to prevent contact welding.


    Field Installation Guidelines

    Mount the module in an approved 3300 rack slot pair ensuring correct alignment with guide rails. Torque mounting screws to manufacturer specification. Use shielded twisted-pair cable for RTD and TC wiring, grounding the shield at the rack ground bus only. Verify all field wiring terminations are tightened to prevent thermal drift errors. Before energizing, confirm sensor type selection matches the ordered configuration to avoid incorrect scaling.

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